Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATTGTATTTTCCTTATTTATTTATTTATTTATTTAAAAAAAGTGGCTAATTCAGTCATAAGACTCATAATCCAAAAGTTGAACAATCACAACAAACTCCAAATACCCCCAATCACACGCCAATGGCGCAAATCTAGCAACAACCCTCCACTCCCACCCAACAACTCATCTCTACCGCCACTTTCTCTCTCCTTAGCAACAATGGCGGGCACACCAAAATCCCACCACCACCACCTCACTCGCAAACTTCTCACCAAAAAAACCACCATCTCCCTCCTCCTTATTTTCCTCTTCAACTTCATCTTCTTCACTTACTACTCGCACCACTACCCTTCTCTCTCCTCCTTCAATCTCCACCGCAACCGCCGCCTCCACGTCACCCACTCCCTAGAACCACCGCAACTTTCTTTTGCCTCCGCCTCAAAGCCCTGGCCCATCCTCCCTTCCTACCTCCCGTGGACCACACCTTCACCTTTTCTCTCCTCCTGTGAGGGTTTCTTCGGTAATGGGTTCAACAAAACCTCCACTATCCTCCCTCGGGCTTCCTCCTTCGCCGCCAACGGGAACTCCTCGTGGTTCCGGTGTCACTTCAGTGGGACGCTCCGGAGCTCCATTTGTGAGGGCGGGCGGGTCATGATGGATCCGAGTAAGATCCGGATGTCGATCGGAGGAGAGAGAATTGAGGAGGTGATCGGACGGTCAGATGAGGAGGAGCTTCCTGTTTTTGAAGACGGCGCGTTTCGATTGAGGCGAAACGGGGTGGGGAGGAAACGACCAGTGGGAAAGAAACAGCCAGTGAAGGCCGTTTCGAAGAAGTTTCTTGATGAAAACGTTGATGAAGGAGAGATTATGAAGCATACGATGAGAGAATTGTTTCAGTCTATGGAGTTGGTTGAAGATGATGCTGATTTTCAATGCTCTGAGGTTAGGGTTTCTAAAAACAGCATTCTTTTTCATTAATATCTGAAATATTCTGCTAGATTTTTGTTTCATAATGGATTGAATTCAATACGCTAGTTATATAATGCTTAATAAGATCACATTTTTTTAATTAATTGGAATTATTCTACATGTGCAACACTAATGTAATGAAGTTCAAATGTGAATCTAGTACGAAGTATAATTCTTTGTTTCCGTTCGAGTACCTTGTCGGATCGTCGACACTAACTTGAGTATGGACATTTACAATTCGTTTAGACCAATGTCATGGAAATTCTTTCCATAAAGATTTGAGTGAGAAACTGTCTTGGGATAAATTTGAATGTAAATTTTTAAGGAAAATCAATATCCTTTCCCACGTAATGTTAGTTCACTCAAAACAATCTATTGTTCTTCATATATTTTCATTATCATCCATTCCATTTGGAAAACTGGTTGGGATTGCAAATTTACAAAGAAAAATATCAAGTTTGAGATAAGATTTCAATTACCATGGATATTATGATGTTATTTTTCTTGTCAAATATCAATTAAATTTATTTTAATTTCCATCATTTATTACCGGTTACCAAAAGTGCCATTAGGGATAAGGATGTGTCCTCTTCATTTGGATTTCACTAAGGGAATGTTTGGACTTTGGTTTCATCTAAAGCGTTTCCAAGGTAAATGAATGTCCCTTTTTAAAACTTTTTTGGTTTGTTTTGGGAGGGGTAGAAAATAATTTTCCAATAACACTAAGGGTGGAAAACCTTTTCAATTTGGAGGGAAACCACTTTTCCTCTTTGCTTCTCTCTTCTATCTTCCCATCAATCCTCACCCTTCTTACTCAAACTTCCCCTTTTTTATATGAATTTTCTTGTAAGGAACTAAACCAGTGAAAACTAGTGTGGATTTGTGTTTTTCCTTGGAATATGTTTTCCATGGAAATTCATTTTTCACCGGGAGCGTTCTCCGCCAAACCAAACGAAGCCTCAATTGAACTTATTGGCCCTTACCAGAACTGTGTTGTGGTTGCGAATTGAACATAGGTAGCCTTATTGGAACCAAACTTAACATATGGAAACTTATTTTTTTCTGAAGTAATTGTGAAGAAGGCAAGGAGAACTGGAGATATTGAGCTTAGACACATACTCTGATACTCGTGCCAGACACGAGTGTGGAATGCCTGAGTCTGAGTATCTTAGGATTTAATGCCCTTATTACTAGGTTTTGCAAATTGACATAAAAATGTTGTATGTGGTATGGTTATGCATAAATGGAAGGTCGCTGACTCATAATTGAGCTTGTATTCCTCACATTATCTATGAGGGGATAGTTTTGGTTTTAGGTAACTCAATCTGTAGTTAAATGTACATAATTTAAGCAATAACTGAATGTGATGTCCCACTTGGCGACGGTGGGGAGAAGCCCTCCATATAGGGAGTAAGAGGCCAGGGAGACAAAAAAAATCTGCAGTGATAGATGAGCTCTTTATGATCCTTCTTCATGGGCTTGTATTGGATATAATTGAACAGGTTAGGTTGAGAAATGTCTTCTTTTTAAAATGATTGTAAGATTGAGAAATGGGCACTGTTTCAAGCTAACACGCCTAAAAGTATAAGGTTCATCTGTTTTCCTTTTATGGGAGAAGAACCTTTTTCTTGACAATTGTACTTCAATCTTAAGCTAATGTAATAGGTATGAAAGTACTCCAAGAAATTGTTGGTTCACCCTCTTATTTACCGATACAACCTTTACTTCGTGCCTTTCTGTTTTTCTCTTAATACAAAGAAGTTTAATCCCCCTTACCCCGCTTCTTGCGGGAGCCTCTTTGAGGCATGGGGTAATGATAATGATGACAAAGAAGTTTAATCTTTGTCAAGAAATTTAGCAATGAGATAGGAGTGGAATAGGCCTCAAAGTGTAGAAAAGGATGATGTCCAAAGAGACATTTGGACTTTATTAGTCAATATAGTGCAGTGAAACTAACCACTTTAAATTGTAATCTTGAATTCTTGCTTCTTTATACGTTGTAGATATATTTTGTTTTCTAGCATTTATTATTTTTTGTTTACCTTACACAGCACCTTGTGCTTGCAGTGGATTGAGGAGCCAACATTATTGCTGACGCGGTTTGAGTATGCTAATGTATTTCACACATATACAGATTGGTATAGTGCGTATGTTAGCTCTAGGGTTACTGGCTTGCCAACACGGCCGCATGTGGTTTTTGTTGATGGCCACAGCAAGGTAAGTGAGTCGTTTACTTTTTTTTTTTGTTCATTTCTTTTGGCATGCTCGATTGGTACTTGAATATGTTAAACTGTGCGAGTACCTTGTAGAACATTGGCTCTGAACTATGAGACTTGTCTTATATGCTTATGTGCTTGGTCATGACTCATGAGTCATAATTACCTGACAAAATTTTAAAGCCCAGAATAAGCAACAAGATAAATTAGGAATCAAAACTGAATCACAAGATAATGGAAAACTCAATGTAAGTAGTAAACACCTCTCCCACTAATCAAGTAGTGGAAGAAACCTCCAAATATCACCAATCAATCAACGGTTATTACTTGCCAGTAATCACCCATCCAGCACAACGTATGTAGATAGCGTATTACAGAGTCCCTTCTCTCAATCTCTCAAAGGGTATTTGAGAGGAGGAACTCAGTGTTACTTTTGAAGAATAATTACCCGTTCCACTTTAAAGATCATAAATCCTACTCCTACTCCAGACAAAAGATGTTGTAGACTCTTACTAGTCTCCTAGATCAAGAATACAACTATTAGAAAACTCATGTTCTATCTTCCTCAAACAATTGGCAGTTATGAGGGAATATAACATTTTACAGTCCTAGCAACCTACTACCACTGAATCAATCATTGAAACTCGAAAAATCAAGCGGCACAGCAGTATAGGAAACTCATATTCTATCTTCCCCAAACAATTGAGTCAATTGACAGTTATGAGGGAATATCACATTTTGGAATCCTAACAACCTAGAATGAGAAAACTACGACAAAATCAAATATTGAAACACGAAAAATCACGTGGCACATCAGCATACAGGTCATGTGCCATGACTCACACTGTCATGCACCGTGCATAGACGTGCGTTGTCGTATCACTCGTATGCAGTGTTAACTAATACTCTTTTCCCCCCACGCCCCACATACTTACAAAGGCGAATTGTAAACAAAACTGGTACTTTTGGCCAAATTCAACAGCGAAGCATATCATACTTCATATTAGCCTATTAGGTAACTCTGATTGTATGCGGGACACTAAGCCACGGCCAACAGCACACAGTTGAGTGGCATGACTCCTTACCTCGTCACAACCCGTCACGGGACCAGTCATGTGTTACTGGATACTCCCTAGTTGGACTTGTTGGGCCTGCAAAACTAACAGAGATTACTTGTCTCAAAATGGAAAACCGTATTATTCATTATAGGCTTGATTGGGAATCTGCTATTCTCTTGACTTGGAAAAAATATCTAGTTATGAGTTTTCTCGTCTGCATTTTCTTCTAGTTGAACACTTCTATTGCTTCCATGTGAAGTCTGATGTTTCAAAGTCAACTAAGTTTAATGTAACACATGATCACTTTTTTTTCCAGACACAATTGGAAGAAACATGGGAAGCACTATTTTCAAGTATTAGGTTTGCTAAAAACTTCACTGGTCCAGTCTGCTTTCGTCATGCTGTCTTTGTACCTTTGGGATATGAGACAGCCTGGTTTAAGGGTCTCAGCCAACATATTGATTGTCGCGGGGCTTCTGCGAAAACCCTGTGGGCAAATCCTGATGATCGCAAAACTGCACGACTATCAGAATTTGGGGAGATGATAAAGGCAGCTTTTGACTTTCCTGTGGATAGCCCCAAAAGACTGAAGCCATCTTCAGAACATAATGTACTTTTCGTTCGGCGTGAAGATTATGTGGCACATCCACGTCATGGTGGTAAAGTTGAATCCAGGCTCAGCAATGAACAAGAAGTGTTTGATTCATTGAAGGCATGGGCTTCTAATTATTCTCAATGTAGTGTAAATCTCATAAATGGGTTGTTTGGTCACATGCCTATGAGAGAACAAGTCCGAGCTATTGAGGATGCATCAGTGATTATTGGAGCTCATGGGGCAGGTCTGACTCACGTAGTATCAGCATTACCAGAAACCGTAATTCTTGAAATTATTAGCAGCCAGTTTCGGCGTCCCCATTTCCAATTGATCTCCCAGTGGAAAGGTTTGAATTACCATGCCATTAATCTCTCTGGATCTTCTGCTAATCCAGCCAAAGTTGTTGAGCGGCTTAAAAGGATCATGAAAAGCATCGGATGCTGAAGTACACTGTATATTGTTATCAGACTTACCACAATTCTTTTCTGCATAGCTAAGAAAATCTGAATGGCCTGCCATGTATGTATCTGGAGTTTCCTTTCAGCTCTTGACAGCTTATACGACCATCCAAATGTTACTTCAACTGTGCTTTTTCTAGGACATCAATTGAAGGAACATAGTCAGGTTTGAAGAATTCTGGGTGTGGTGATTGGTGACTGACAATTCAAGGATGTGGCTTCCTGAGTATTTTTTTTATTAACGGAGTGAGTAATTTTTCTGTGAGTTCTTCTTCCTCAGGCGGTTCTATGCAAGGTTAGGTTAGGACTTGGGAGTAACATTAATTACCTGATCAGTGTGTACTATTATTTTATATCACCATTTTCATCTCAGGTTGTGGGTAGGCCTTTGTGTAGTTCGGATTTCATCCCTAACTTTTGTACCCTTTGAAACCATGATATTCTGTGTACAGTTAAAATTCTGAATATGGTGGATGATCCACTTGAATGAATATGAAATACCTAGAAGTTTACCTGTCATTTGTTTTCTTCCTCTTCAATACTGAACTTTTGTTGCAGTGACTTTTTGTTACCGGAAGGTTTCTTCTGTTGCCGTTGATCATCTAGGAATAACAAGAGCATTATTTGCACTCTTGAAAGTGGCAAATAGTGTTGTCATGTCTTGTACCGTATTCATATGTCGAATTTAGACTGTACGGCGAATATCTTTAGAAATGTGAAAAACACAGCTGAAATTCTTCTTTTTACATGTCTTCAGTCTTCAGTCTTCAGTGTGTGGCAGACAGTGAGTACAGCAACTTTATGATGGCTTCTAGAGTAGTCCTTGTGATTACAATCACTTTGTGAGGTGGTAAATTTTGTTACTGGTATTCTCCAAGCTGATCCATGATAAAGAGGGATAAGGTGGGCTTAAGGAGAGGTCGTTT ATTGTATTTTCCTTATTTATTTATTTATTTATTTAAAAAAAGTGGCTAATTCAGTCATAAGACTCATAATCCAAAAGTTGAACAATCACAACAAACTCCAAATACCCCCAATCACACGCCAATGGCGCAAATCTAGCAACAACCCTCCACTCCCACCCAACAACTCATCTCTACCGCCACTTTCTCTCTCCTTAGCAACAATGGCGGGCACACCAAAATCCCACCACCACCACCTCACTCGCAAACTTCTCACCAAAAAAACCACCATCTCCCTCCTCCTTATTTTCCTCTTCAACTTCATCTTCTTCACTTACTACTCGCACCACTACCCTTCTCTCTCCTCCTTCAATCTCCACCGCAACCGCCGCCTCCACGTCACCCACTCCCTAGAACCACCGCAACTTTCTTTTGCCTCCGCCTCAAAGCCCTGGCCCATCCTCCCTTCCTACCTCCCGTGGACCACACCTTCACCTTTTCTCTCCTCCTGTGAGGGTTTCTTCGGTAATGGGTTCAACAAAACCTCCACTATCCTCCCTCGGGCTTCCTCCTTCGCCGCCAACGGGAACTCCTCGTGGTTCCGGTGTCACTTCAGTGGGACGCTCCGGAGCTCCATTTGTGAGGGCGGGCGGGTCATGATGGATCCGAGTAAGATCCGGATGTCGATCGGAGGAGAGAGAATTGAGGAGGTGATCGGACGGTCAGATGAGGAGGAGCTTCCTGTTTTTGAAGACGGCGCGTTTCGATTGAGGCGAAACGGGGTGGGGAGGAAACGACCAGTGGGAAAGAAACAGCCAGTGAAGGCCGTTTCGAAGAAGTTTCTTGATGAAAACGTTGATGAAGGAGAGATTATGAAGCATACGATGAGAGAATTGTTTCAGTCTATGGAGTTGGTTGAAGATGATGCTGATTTTCAATGCTCTGAGTGGATTGAGGAGCCAACATTATTGCTGACGCGGTTTGAGTATGCTAATGTATTTCACACATATACAGATTGGTATAGTGCGTATGTTAGCTCTAGGGTTACTGGCTTGCCAACACGGCCGCATGTGGTTTTTGTTGATGGCCACAGCAAGACACAATTGGAAGAAACATGGGAAGCACTATTTTCAAGTATTAGGTTTGCTAAAAACTTCACTGGTCCAGTCTGCTTTCGTCATGCTGTCTTTGTACCTTTGGGATATGAGACAGCCTGGTTTAAGGGTCTCAGCCAACATATTGATTGTCGCGGGGCTTCTGCGAAAACCCTGTGGGCAAATCCTGATGATCGCAAAACTGCACGACTATCAGAATTTGGGGAGATGATAAAGGCAGCTTTTGACTTTCCTGTGGATAGCCCCAAAAGACTGAAGCCATCTTCAGAACATAATGTACTTTTCGTTCGGCGTGAAGATTATGTGGCACATCCACGTCATGGTGGTAAAGTTGAATCCAGGCTCAGCAATGAACAAGAAGTGTTTGATTCATTGAAGGCATGGGCTTCTAATTATTCTCAATGTAGTGTAAATCTCATAAATGGGTTGTTTGGTCACATGCCTATGAGAGAACAAGTCCGAGCTATTGAGGATGCATCAGTGATTATTGGAGCTCATGGGGCAGGTCTGACTCACGTAGTATCAGCATTACCAGAAACCGTAATTCTTGAAATTATTAGCAGCCAGTTTCGGCGTCCCCATTTCCAATTGATCTCCCAGTGGAAAGGTTTGAATTACCATGCCATTAATCTCTCTGGATCTTCTGCTAATCCAGCCAAAGTTGTTGAGCGGCTTAAAAGGATCATGAAAAGCATCGGATGCTGAAGTACACTGTATATTGTTATCAGACTTACCACAATTCTTTTCTGCATAGCTAAGAAAATCTGAATGGCCTGCCATGTATGTATCTGGAGTTTCCTTTCAGCTCTTGACAGCTTATACGACCATCCAAATGTTACTTCAACTGTGCTTTTTCTAGGACATCAATTGAAGGAACATAGTCAGGTTTGAAGAATTCTGGGTGTGGTGATTGGTGACTGACAATTCAAGGATGTGGCTTCCTGAGTATTTTTTTTATTAACGGAGTGAGTAATTTTTCTGTGAGTTCTTCTTCCTCAGGCGGTTCTATGCAAGGTTAGGTTAGGACTTGGGAGTAACATTAATTACCTGATCAGTGTGTACTATTATTTTATATCACCATTTTCATCTCAGGTTGTGGGTAGGCCTTTGTGTAGTTCGGATTTCATCCCTAACTTTTGTACCCTTTGAAACCATGATATTCTGTGTACAGTTAAAATTCTGAATATGGTGGATGATCCACTTGAATGAATATGAAATACCTAGAAGTTTACCTGTCATTTGTTTTCTTCCTCTTCAATACTGAACTTTTGTTGCAGTGACTTTTTGTTACCGGAAGGTTTCTTCTGTTGCCGTTGATCATCTAGGAATAACAAGAGCATTATTTGCACTCTTGAAAGTGGCAAATAGTGTTGTCATGTCTTGTACCGTATTCATATGTCGAATTTAGACTGTACGGCGAATATCTTTAGAAATGTGAAAAACACAGCTGAAATTCTTCTTTTTACATGTCTTCAGTCTTCAGTCTTCAGTGTGTGGCAGACAGTGAGTACAGCAACTTTATGATGGCTTCTAGAGTAGTCCTTGTGATTACAATCACTTTGTGAGGTGGTAAATTTTGTTACTGGTATTCTCCAAGCTGATCCATGATAAAGAGGGATAAGGTGGGCTTAAGGAGAGGTCGTTT ATGGCGGGCACACCAAAATCCCACCACCACCACCTCACTCGCAAACTTCTCACCAAAAAAACCACCATCTCCCTCCTCCTTATTTTCCTCTTCAACTTCATCTTCTTCACTTACTACTCGCACCACTACCCTTCTCTCTCCTCCTTCAATCTCCACCGCAACCGCCGCCTCCACGTCACCCACTCCCTAGAACCACCGCAACTTTCTTTTGCCTCCGCCTCAAAGCCCTGGCCCATCCTCCCTTCCTACCTCCCGTGGACCACACCTTCACCTTTTCTCTCCTCCTGTGAGGGTTTCTTCGGTAATGGGTTCAACAAAACCTCCACTATCCTCCCTCGGGCTTCCTCCTTCGCCGCCAACGGGAACTCCTCGTGGTTCCGGTGTCACTTCAGTGGGACGCTCCGGAGCTCCATTTGTGAGGGCGGGCGGGTCATGATGGATCCGAGTAAGATCCGGATGTCGATCGGAGGAGAGAGAATTGAGGAGGTGATCGGACGGTCAGATGAGGAGGAGCTTCCTGTTTTTGAAGACGGCGCGTTTCGATTGAGGCGAAACGGGGTGGGGAGGAAACGACCAGTGGGAAAGAAACAGCCAGTGAAGGCCGTTTCGAAGAAGTTTCTTGATGAAAACGTTGATGAAGGAGAGATTATGAAGCATACGATGAGAGAATTGTTTCAGTCTATGGAGTTGGTTGAAGATGATGCTGATTTTCAATGCTCTGAGTGGATTGAGGAGCCAACATTATTGCTGACGCGGTTTGAGTATGCTAATGTATTTCACACATATACAGATTGGTATAGTGCGTATGTTAGCTCTAGGGTTACTGGCTTGCCAACACGGCCGCATGTGGTTTTTGTTGATGGCCACAGCAAGACACAATTGGAAGAAACATGGGAAGCACTATTTTCAAGTATTAGGTTTGCTAAAAACTTCACTGGTCCAGTCTGCTTTCGTCATGCTGTCTTTGTACCTTTGGGATATGAGACAGCCTGGTTTAAGGGTCTCAGCCAACATATTGATTGTCGCGGGGCTTCTGCGAAAACCCTGTGGGCAAATCCTGATGATCGCAAAACTGCACGACTATCAGAATTTGGGGAGATGATAAAGGCAGCTTTTGACTTTCCTGTGGATAGCCCCAAAAGACTGAAGCCATCTTCAGAACATAATGTACTTTTCGTTCGGCGTGAAGATTATGTGGCACATCCACGTCATGGTGGTAAAGTTGAATCCAGGCTCAGCAATGAACAAGAAGTGTTTGATTCATTGAAGGCATGGGCTTCTAATTATTCTCAATGTAGTGTAAATCTCATAAATGGGTTGTTTGGTCACATGCCTATGAGAGAACAAGTCCGAGCTATTGAGGATGCATCAGTGATTATTGGAGCTCATGGGGCAGGTCTGACTCACGTAGTATCAGCATTACCAGAAACCGTAATTCTTGAAATTATTAGCAGCCAGTTTCGGCGTCCCCATTTCCAATTGATCTCCCAGTGGAAAGGTTTGAATTACCATGCCATTAATCTCTCTGGATCTTCTGCTAATCCAGCCAAAGTTGTTGAGCGGCTTAAAAGGATCATGAAAAGCATCGGATGCTGA MAGTPKSHHHHLTRKLLTKKTTISLLLIFLFNFIFFTYYSHHYPSLSSFNLHRNRRLHVTHSLEPPQLSFASASKPWPILPSYLPWTTPSPFLSSCEGFFGNGFNKTSTILPRASSFAANGNSSWFRCHFSGTLRSSICEGGRVMMDPSKIRMSIGGERIEEVIGRSDEEELPVFEDGAFRLRRNGVGRKRPVGKKQPVKAVSKKFLDENVDEGEIMKHTMRELFQSMELVEDDADFQCSEWIEEPTLLLTRFEYANVFHTYTDWYSAYVSSRVTGLPTRPHVVFVDGHSKTQLEETWEALFSSIRFAKNFTGPVCFRHAVFVPLGYETAWFKGLSQHIDCRGASAKTLWANPDDRKTARLSEFGEMIKAAFDFPVDSPKRLKPSSEHNVLFVRREDYVAHPRHGGKVESRLSNEQEVFDSLKAWASNYSQCSVNLINGLFGHMPMREQVRAIEDASVIIGAHGAGLTHVVSALPETVILEIISSQFRRPHFQLISQWKGLNYHAINLSGSSANPAKVVERLKRIMKSIGC Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo09060.1 vs. NCBI nr
Match: gi|902227399|gb|KNA20666.1| (hypothetical protein SOVF_050290 [Spinacia oleracea]) HSP 1 Score: 1085.5 bits (2806), Expect = 0.000e+0 Identity = 531/531 (100.00%), Postives = 531/531 (100.00%), Query Frame = 1
BLAST of Spo09060.1 vs. NCBI nr
Match: gi|731329937|ref|XP_010675859.1| (PREDICTED: beta-(1,2)-xylosyltransferase [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 827.0 bits (2135), Expect = 1.900e-236 Identity = 416/538 (77.32%), Postives = 465/538 (86.43%), Query Frame = 1
BLAST of Spo09060.1 vs. NCBI nr
Match: gi|870861615|gb|KMT12887.1| (hypothetical protein BVRB_4g089770 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 748.0 bits (1930), Expect = 1.100e-212 Identity = 390/539 (72.36%), Postives = 434/539 (80.52%), Query Frame = 1
BLAST of Spo09060.1 vs. NCBI nr
Match: gi|590606059|ref|XP_007020647.1| (Beta-(1,2)-xylosyltransferase, putative [Theobroma cacao]) HSP 1 Score: 653.7 bits (1685), Expect = 2.800e-184 Identity = 314/460 (68.26%), Postives = 373/460 (81.09%), Query Frame = 1
BLAST of Spo09060.1 vs. NCBI nr
Match: gi|728808904|gb|KHF98594.1| (Beta-(1,2)-xylosyltransferase -like protein [Gossypium arboreum]) HSP 1 Score: 649.4 bits (1674), Expect = 5.300e-183 Identity = 326/517 (63.06%), Postives = 395/517 (76.40%), Query Frame = 1
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RMD1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_050290 PE=4 SV=1) HSP 1 Score: 1085.5 bits (2806), Expect = 0.000e+0 Identity = 531/531 (100.00%), Postives = 531/531 (100.00%), Query Frame = 1
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Match: A0A0J8FAI9_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g089760 PE=4 SV=1) HSP 1 Score: 827.0 bits (2135), Expect = 1.300e-236 Identity = 416/538 (77.32%), Postives = 465/538 (86.43%), Query Frame = 1
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CH46_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g089770 PE=4 SV=1) HSP 1 Score: 748.0 bits (1930), Expect = 7.600e-213 Identity = 390/539 (72.36%), Postives = 434/539 (80.52%), Query Frame = 1
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Match: A0A061F699_THECC (Beta-(1,2)-xylosyltransferase, putative OS=Theobroma cacao GN=TCM_030750 PE=4 SV=1) HSP 1 Score: 653.7 bits (1685), Expect = 2.000e-184 Identity = 314/460 (68.26%), Postives = 373/460 (81.09%), Query Frame = 1
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Match: A0A0B0MCT0_GOSAR (Beta-(1,2)-xylosyltransferase-like protein OS=Gossypium arboreum GN=F383_12321 PE=4 SV=1) HSP 1 Score: 649.4 bits (1674), Expect = 3.700e-183 Identity = 326/517 (63.06%), Postives = 395/517 (76.40%), Query Frame = 1
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Match: XYLT_ARATH (Beta-(1,2)-xylosyltransferase OS=Arabidopsis thaliana GN=XYLT PE=1 SV=1) HSP 1 Score: 590.9 bits (1522), Expect = 1.400e-167 Identity = 312/532 (58.65%), Postives = 378/532 (71.05%), Query Frame = 1
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Match: EOGT_CHICK (EGF domain-specific O-linked N-acetylglucosamine transferase OS=Gallus gallus GN=EOGT PE=2 SV=2) HSP 1 Score: 67.0 bits (162), Expect = 7.000e-10 Identity = 66/281 (23.49%), Postives = 115/281 (40.93%), Query Frame = 1
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Match: EOGT_CANLF (EGF domain-specific O-linked N-acetylglucosamine transferase OS=Canis lupus familiaris GN=EOGT PE=2 SV=1) HSP 1 Score: 58.9 bits (141), Expect = 1.900e-7 Identity = 59/281 (21.00%), Postives = 111/281 (39.50%), Query Frame = 1
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Match: EOGT_HUMAN (EGF domain-specific O-linked N-acetylglucosamine transferase OS=Homo sapiens GN=EOGT PE=1 SV=1) HSP 1 Score: 57.8 bits (138), Expect = 4.300e-7 Identity = 59/281 (21.00%), Postives = 110/281 (39.15%), Query Frame = 1
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Match: EOGT_PANTR (EGF domain-specific O-linked N-acetylglucosamine transferase OS=Pan troglodytes GN=EOGT PE=2 SV=1) HSP 1 Score: 57.8 bits (138), Expect = 4.300e-7 Identity = 59/281 (21.00%), Postives = 110/281 (39.15%), Query Frame = 1
BLAST of Spo09060.1 vs. TAIR (Arabidopsis)
Match: AT5G55500.1 (beta-1,2-xylosyltransferase) HSP 1 Score: 590.9 bits (1522), Expect = 7.900e-169 Identity = 312/532 (58.65%), Postives = 378/532 (71.05%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo09060.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo09060.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo09060.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo09060.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
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